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129 results for “Pyrenees”
FIGURE 3. A in Morphological and phylogenetical description of Dennisiomyces fibrillosus sp. nov. (Agaricales, Tricholomataceae) from the Pyrenees and the first record of the genus in Europe
FIGURE 3. A. crystals in the basidia after treatment with KOH 5% and staining with Congo Red; B. reticulate aspect of damaged spores in lactic cotton blue; C. basidia with a thickened cell wall and a metachromatic content in Cresyl Blue; D. pleurocystidoid structure with a metachromatic content in Cresyl Blue; E. two pleurocystidoid structures in distilled water; F. part of a gill edge covered with sterile hairs, in Congo Red; G. pileus trama in distilled water; H. lamellar trama in Congo Red; I. sub-hymenium in Congo Red. Microscope photographs by Gilles Corriol.
FIGURE 1 in Morphological and phylogenetical description of Dennisiomyces fibrillosus sp. nov. (Agaricales, Tricholomataceae) from the Pyrenees and the first record of the genus in Europe
FIGURE 1. Maximum-likelihood phylogenetic tree based on 4 markers (18S-ITS-28S-RPB2), obtained by applying the PhyML method in the Geneious® platform. Bootstrap values are indicated above branches.
FIGURE 2 in Morphological and phylogenetical description of Dennisiomyces fibrillosus sp. nov. (Agaricales, Tricholomataceae) from the Pyrenees and the first record of the genus in Europe
FIGURE 2. Dennisiomyces fibrillosus, holotype; A. spores, B. basidia and basidiola, C. edge sterile hairs, D. caulocutis; E. epicutis. Scale bars: 10 μm; drawings by Gilles Corriol.
FIGURE 4. Dennisiomyces fibrillosus, A in Morphological and phylogenetical description of Dennisiomyces fibrillosus sp. nov. (Agaricales, Tricholomataceae) from the Pyrenees and the first record of the genus in Europe
FIGURE 4. Dennisiomyces fibrillosus, A. holotype, basidiomes in situ, Arcizans-Avant, Hautes-Pyrénées; B. collection of 9th November 2018, basidiomes in situ, same locality. Photographs by Gilles Corriol.
Data from: The role of geography and ecology in shaping repeated patterns of morphological and genetic differentiation between European minnows (Phoxinus phoxinus) from the Pyrenees and the Alps
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Snow depth mapping with an Unmanned Aerial Vehicles in heterogeneous mountain site (Izas Catchment, Pyrenees)
<p>Recent developments in unmanned aircraft vehicles (UAV) and Structure for Motion (SfM photogrammetry or simply SfM) algorithms have proved their worth for determining snow depth distribution. This dataset presents UAV and Terrestrial Laser Scanner (TLS) snow depth obsrevations obtained in complex alpine terrain in the Pyrenees. UAV observations have been acqired with a fixed-wing UAV working in RTK mode with an RGB camera. During the 2018-19 season, seven field campaigns (13 UAV flights) were undertaken covering 0.48 km2 . Several UAV observations were obtained under different light conditions and flight block configurations (altitude and image overlaps) in the same day with the aim if evaluating UAV observations when compared ti a well-established close range remote sensing technique (TLS).</p>
Data from: Encroachment of shrubs into subalpine grasslands in the Pyrenees modifies the structure of soil fungal communities and soil properties.
The encroachment of shrubs into grasslands is common in terrestrial ecosystems dominated by grass. Land abandonment and favourable climatic trends in recent decades have favoured the expansion of shrubs into subalpine grasslands in many mountainous regions across Europe. The advance of the succession from grassland to shrubland is expected to have a major impact on ecosystem functioning. We used DNA metabarcoding to assess whether the structure of soil fungal communities varied along the succession from subalpine grassland to shrubland in the Pyrenees, and investigated whether shrub encroachment was associated with changes in soil properties. The expansion of shrubs increased the soil C:N ratio and/or reduced the N, P, or K contents. Plant-driven changes in soil properties were strongly associated with the compositional turnover of fungi, including arbuscular mycorrhizal, ectomycorrhizal, ericoid, root endophytic, saprotrophic, lichenised, and pathogenic fungi. Total richness and the richness of most functional groups were correlated with soil P, N, and the C:N or N:P ratios. We show that the interplay between abiotic factors (changes in soil properties) and biotic factors (occurrence and identity of shrubs) played a key role in the structure and uniqueness of soil fungal communities along the succession.
FIGURE 2 in Two new species of Xanthempis Bezzi (Diptera, Empididae, Empidinae) endemic to the Pyrenees
FIGURE 2. Male hypopygium of E. (X.) virgutala, sp. nov., lateral view. Scale: 0.1 mm.
FIGURES 1–2 in Baronniesia delioti gen. n. sp. n., a new subterranean Leptodirini from the French Pyrenees (Coleoptera: Leiodidae: Cholevinae)
FIGURES 1–2. Habitus of Baronniesia delioti gen. n. sp. n. 1―male; 2―female.
FIGURES 3–4 in Baronniesia delioti gen. n. sp. n., a new subterranean Leptodirini from the French Pyrenees (Coleoptera: Leiodidae: Cholevinae)
FIGURES 3–4. Aedeagus of Baronniesia delioti gen. n. sp. n. 3—dorsal view; 4—lateral view.
FIGURES 1–2. Habitus. 1 in A new species of blind Trechinae from the Pyrenees of Huesca, and its position within Aphaenops (sensu stricto) (Coleoptera: Carabidae: Trechini)
FIGURES 1–2. Habitus. 1―holotype of Aphaenops parvulus sp. n.; 2―A. eskualduna Coiffait.
FIGURE 2 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity
FIGURE 2. Known distributions of Consorophylax species.
FIGURE 5 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status
FIGURE 5. Map showing historical locations (●) of Bombus confusus.
FIGURE 4 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status
FIGURE 4. Map showing historical locations (●) and recent records (*) of Bombus flavidus lutescens.
FIGURE 6 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status
FIGURE 6. Map showing historical locations (●) of Bombus gerstaeckeri.
Distribution. Pyrenees Mts in S France, Andorra, and NE Spain. in Bovidae
Distribution. Pyrenees Mts in S France, Andorra, and NE Spain.
FIGURE 9 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 9. Discophrya ordesae sp. n. The tentacles retracted on the anterior end of the body.
FIGURE 7 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 7. Discophrya ordesae sp. n. A complete suctorian showing the shape of the body.
Magnetic fabrics of weakly-deformed mudrocks from the Jaca-Pamplona basin (Pyrenees); new constrains on the sensitivity of magnetic fabrics and the tectonic evolution of the Southern Pyrenees
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FIGURE 8 in Spider crabs (Decapoda: Brachyura: Majoidea) from the upper Eocene of south Pyrenees (Huesca, Spain)
FIGURE 8. Paratypes of Spinirostrimaia echinata n. sp. from the Pamplona Marls Formation (upper Eocene, southern Pyrenees). A: Large specimen MPZ 2023/7. B-C: Specimen MPZ 2023/8 in dorsal (B) and frontal (C) view; D: specimen MPZ 2023/9 in dorsal view; E: specimen MPZ 2023/10 in dorsal view. Abbreviations: hl: hepatic lobe; hs: hepatic spine; is: intercalated spine; pl: preorbital lobe; ps: postorbital spine; r1-3: spines of pseudorostral spines; se: supraorbital eave.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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